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通过插入原子级薄的缺陷单层石墨烯实现受限电流路径分布下电阻开关的增强。

Enhancement of resistive switching under confined current path distribution enabled by insertion of atomically thin defective monolayer graphene.

作者信息

Lee Keundong, Hwang Inrok, Lee Sangik, Oh Sungtaek, Lee Dukhyun, Kim Cheol Kyeom, Nam Yoonseung, Hong Sahwan, Yoon Chansoo, Morgan Robert B, Kim Hakseong, Seo Sunae, Seo David H, Lee Sangwook, Park Bae Ho

机构信息

Division of Quantum Phases &Devices, Department of Physics, Konkuk University, Seoul, 143-701, Korea.

1] Division of Quantum Phases &Devices, Department of Physics, Konkuk University, Seoul, 143-701, Korea [2] Electronic Materials Research Center, Korea Institute of Science and Technology, Seoul 136-791, Korea.

出版信息

Sci Rep. 2015 Jul 10;5:11279. doi: 10.1038/srep11279.

Abstract

Resistive random access memory (ReRAM) devices have been extensively investigated resulting in significant enhancement of switching properties. However fluctuations in switching parameters are still critical weak points which cause serious failures during 'reading' and 'writing' operations of ReRAM devices. It is believed that such fluctuations may be originated by random creation and rupture of conducting filaments inside ReRAM oxides. Here, we introduce defective monolayer graphene between an oxide film and an electrode to induce confined current path distribution inside the oxide film, and thus control the creation and rupture of conducting filaments. The ReRAM device with an atomically thin interlayer of defective monolayer graphene reveals much reduced fluctuations in switching parameters compared to a conventional one. Our results demonstrate that defective monolayer graphene paves the way to reliable ReRAM devices operating under confined current path distribution.

摘要

电阻式随机存取存储器(ReRAM)器件已得到广泛研究,其开关特性有了显著提高。然而,开关参数的波动仍然是关键弱点,这会在ReRAM器件的“读”和“写”操作过程中导致严重故障。据信,这种波动可能源于ReRAM氧化物内部导电细丝的随机形成和断裂。在此,我们在氧化膜和电极之间引入有缺陷的单层石墨烯,以诱导氧化膜内部受限的电流路径分布,从而控制导电细丝的形成和断裂。与传统的ReRAM器件相比,具有原子级薄的有缺陷单层石墨烯中间层的ReRAM器件的开关参数波动大大降低。我们的结果表明,有缺陷的单层石墨烯为在受限电流路径分布下运行的可靠ReRAM器件铺平了道路。

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